Universal fault-tolerant quantum computers require millions of qubits with low error rates. Since this technology is years ahead, noisy intermediate-scale quantum (NISQ) computation is receiving tremendous interest. In this setup, quantum reservoir computing is a relevant machine learning algorithm. Its simplicity of training and implementation allows to perform challenging computations on today's available machines. In this Letter, we provide a criterion to select optimal quantum reservoirs, requiring few and simple gates. Our findings demonstrate that they render better results than other commonly used models with significantly less gates and also provide insight on the theoretical gap between quantum reservoir computing and the theory of...
Solving electronic structure problems represents a promising field of application for quantum comput...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future. Quantum com...
Universal fault-tolerant quantum computers require millions of qubits with low error rates. Since th...
In recent years, researchers are investing more and more resources in understanding to what extent q...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Recently, a team of scientists from Google claims to have carried a computation on their noisy, inte...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Understanding the computational power of noisy intermediate-scale quantum (NISQ) devices is of both ...
The hope of the quantum computing field is that quantum architectures are able to scale up and reali...
Quantum machine learning has proven to be a fruitful area in which to search for potential applicati...
Quantum computing promises to revolutionise many fields, including chemical simulations and machine ...
Quantum computers are actively competing to surpass classical supercomputers, but quantum errors rem...
While scalable, fully error corrected quantum computing is years or even decades away, there is cons...
Solving electronic structure problems represents a promising field of application for quantum comput...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future. Quantum com...
Universal fault-tolerant quantum computers require millions of qubits with low error rates. Since th...
In recent years, researchers are investing more and more resources in understanding to what extent q...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Recently, a team of scientists from Google claims to have carried a computation on their noisy, inte...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Understanding the computational power of noisy intermediate-scale quantum (NISQ) devices is of both ...
The hope of the quantum computing field is that quantum architectures are able to scale up and reali...
Quantum machine learning has proven to be a fruitful area in which to search for potential applicati...
Quantum computing promises to revolutionise many fields, including chemical simulations and machine ...
Quantum computers are actively competing to surpass classical supercomputers, but quantum errors rem...
While scalable, fully error corrected quantum computing is years or even decades away, there is cons...
Solving electronic structure problems represents a promising field of application for quantum comput...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future. Quantum com...